Coverage Report

Created: 2026-09-15 16:03

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/root/bitcoin/src/support/allocators/pool.h
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// Copyright (c) 2022-present The Bitcoin Core developers
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// Distributed under the MIT software license, see the accompanying
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// file COPYING or http://www.opensource.org/licenses/mit-license.php.
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#ifndef BITCOIN_SUPPORT_ALLOCATORS_POOL_H
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#define BITCOIN_SUPPORT_ALLOCATORS_POOL_H
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#include <array>
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#include <cassert>
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#include <cstddef>
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#include <list>
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#include <memory>
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#include <new>
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#include <type_traits>
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#include <utility>
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#include <util/check.h>
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#include <util/overflow.h>
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20
/**
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 * A memory resource similar to std::pmr::unsynchronized_pool_resource, but
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 * optimized for node-based containers. It has the following properties:
23
 *
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 * * Owns the allocated memory and frees it on destruction, even when deallocate
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 *   has not been called on the allocated blocks.
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 *
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 * * Consists of a number of pools, each one for a different block size.
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 *   Each pool holds blocks of uniform size in a freelist.
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 *
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 * * Exhausting memory in a freelist causes a new allocation of a fixed size chunk.
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 *   This chunk is used to carve out blocks.
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 *
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 * * Block sizes or alignments that can not be served by the pools are allocated
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 *   and deallocated by operator new().
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 *
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 * PoolResource is not thread-safe. It is intended to be used by PoolAllocator.
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 *
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 * @tparam MAX_BLOCK_SIZE_BYTES Maximum size to allocate with the pool. If larger
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 *         sizes are requested, allocation falls back to new().
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 *
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 * @tparam ALIGN_BYTES Required alignment for the allocations.
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 *
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 * An example: If you create a PoolResource<128, 8>(262144) and perform a bunch of
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 * allocations and deallocate 2 blocks with size 8 bytes, and 3 blocks with size 16,
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 * the members will look like this:
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 *
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 *     m_free_lists                         m_allocated_chunks
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 *        ┌───┐                                ┌───┐  ┌────────────-------──────┐
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 *        │   │  blocks                        │   ├─►│    262144 B             │
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 *        │   │  ┌─────┐  ┌─────┐              └─┬─┘  └────────────-------──────┘
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 *        │ 1 ├─►│ 8 B ├─►│ 8 B │                │
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 *        │   │  └─────┘  └─────┘                :
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 *        │   │                                  │
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 *        │   │  ┌─────┐  ┌─────┐  ┌─────┐       ▼
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 *        │ 2 ├─►│16 B ├─►│16 B ├─►│16 B │     ┌───┐  ┌─────────────────────────┐
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 *        │   │  └─────┘  └─────┘  └─────┘     │   ├─►│          ▲              │ ▲
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 *        │   │                                └───┘  └──────────┬──────────────┘ │
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 *        │ . │                                                  │    m_available_memory_end
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 *        │ . │                                         m_available_memory_it
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 *        │ . │
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 *        │   │
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 *        │   │
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 *        │16 │
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 *        └───┘
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 *
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 * Here m_free_lists[1] holds the 2 blocks of size 8 bytes, and m_free_lists[2]
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 * holds the 3 blocks of size 16. The blocks came from the data stored in the
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 * m_allocated_chunks list. Each chunk has bytes 262144. The last chunk has still
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 * some memory available for the blocks, and when m_available_memory_it is at the
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 * end, a new chunk will be allocated and added to the list.
71
 */
72
template <std::size_t MAX_BLOCK_SIZE_BYTES, std::size_t ALIGN_BYTES>
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class PoolResource final
74
{
75
    static_assert(ALIGN_BYTES > 0, "ALIGN_BYTES must be nonzero");
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    static_assert((ALIGN_BYTES & (ALIGN_BYTES - 1)) == 0, "ALIGN_BYTES must be a power of two");
77
78
    /**
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     * In-place linked list of the allocations, used for the freelist.
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     */
81
    struct ListNode {
82
        ListNode* m_next;
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432k
        explicit ListNode(ListNode* next) : m_next(next) {}
_ZN12PoolResourceILm152ELm8EE8ListNodeC2EPS1_
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432k
        explicit ListNode(ListNode* next) : m_next(next) {}
Unexecuted instantiation: _ZN12PoolResourceILm128ELm1EE8ListNodeC2EPS1_
Unexecuted instantiation: _ZN12PoolResourceILm128ELm2EE8ListNodeC2EPS1_
Unexecuted instantiation: _ZN12PoolResourceILm128ELm4EE8ListNodeC2EPS1_
Unexecuted instantiation: _ZN12PoolResourceILm128ELm8EE8ListNodeC2EPS1_
Unexecuted instantiation: _ZN12PoolResourceILm8ELm8EE8ListNodeC2EPS1_
Unexecuted instantiation: _ZN12PoolResourceILm16ELm16EE8ListNodeC2EPS1_
Unexecuted instantiation: _ZN12PoolResourceILm256ELm16EE8ListNodeC2EPS1_
Unexecuted instantiation: _ZN12PoolResourceILm256ELm64EE8ListNodeC2EPS1_
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    };
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    static_assert(std::is_trivially_destructible_v<ListNode>, "Make sure we don't need to manually call a destructor");
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    /**
89
     * Internal alignment value. The larger of the requested ALIGN_BYTES and alignof(FreeList).
90
     */
91
    static constexpr std::size_t ELEM_ALIGN_BYTES = std::max(alignof(ListNode), ALIGN_BYTES);
92
    static_assert((ELEM_ALIGN_BYTES & (ELEM_ALIGN_BYTES - 1)) == 0, "ELEM_ALIGN_BYTES must be a power of two");
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    static_assert(sizeof(ListNode) <= ELEM_ALIGN_BYTES, "Units of size ELEM_SIZE_ALIGN need to be able to store a ListNode");
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    static_assert((MAX_BLOCK_SIZE_BYTES & (ELEM_ALIGN_BYTES - 1)) == 0, "MAX_BLOCK_SIZE_BYTES needs to be a multiple of the alignment.");
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    /**
97
     * Size in bytes to allocate per chunk
98
     */
99
    const size_t m_chunk_size_bytes;
100
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    /**
102
     * Contains all allocated pools of memory, used to free the data in the destructor.
103
     */
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    std::list<std::byte*> m_allocated_chunks{};
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    /**
107
     * Single linked lists of all data that came from deallocating.
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     * m_free_lists[n] will serve blocks of size n*ELEM_ALIGN_BYTES.
109
     */
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    std::array<ListNode*, MAX_BLOCK_SIZE_BYTES / ELEM_ALIGN_BYTES + 1> m_free_lists{};
111
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    /**
113
     * Points to the beginning of available memory for carving out allocations.
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     */
115
    std::byte* m_available_memory_it = nullptr;
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    /**
118
     * Points to the end of available memory for carving out allocations.
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     *
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     * That member variable is redundant, and is always equal to `m_allocated_chunks.back() + m_chunk_size_bytes`
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     * whenever it is accessed, but `m_available_memory_end` caches this for clarity and efficiency.
122
     */
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    std::byte* m_available_memory_end = nullptr;
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    /**
126
     * How many multiple of ELEM_ALIGN_BYTES are necessary to fit bytes. We use that result directly as an index
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     * into m_free_lists. Round up for the special case when bytes==0.
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     */
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    [[nodiscard]] static constexpr std::size_t NumElemAlignBytes(std::size_t bytes)
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868k
    {
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        return CeilDiv(bytes, ELEM_ALIGN_BYTES) + (bytes == 0);
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868k
    }
_ZN12PoolResourceILm152ELm8EE17NumElemAlignBytesEm
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868k
    {
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        return CeilDiv(bytes, ELEM_ALIGN_BYTES) + (bytes == 0);
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    }
Unexecuted instantiation: _ZN12PoolResourceILm128ELm1EE17NumElemAlignBytesEm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm2EE17NumElemAlignBytesEm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm4EE17NumElemAlignBytesEm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm8EE17NumElemAlignBytesEm
Unexecuted instantiation: _ZN12PoolResourceILm8ELm8EE17NumElemAlignBytesEm
Unexecuted instantiation: _ZN12PoolResourceILm16ELm16EE17NumElemAlignBytesEm
Unexecuted instantiation: _ZN12PoolResourceILm256ELm16EE17NumElemAlignBytesEm
Unexecuted instantiation: _ZN12PoolResourceILm256ELm64EE17NumElemAlignBytesEm
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    /**
135
     * True when it is possible to make use of the freelist
136
     */
137
    [[nodiscard]] static constexpr bool IsFreeListUsable(std::size_t bytes, std::size_t alignment)
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875k
    {
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        return alignment <= ELEM_ALIGN_BYTES && bytes <= MAX_BLOCK_SIZE_BYTES;
  Branch (139:16): [True: 875k, False: 0]
  Branch (139:49): [True: 863k, False: 11.5k]
  Branch (139:16): [True: 0, False: 0]
  Branch (139:49): [True: 0, False: 0]
  Branch (139:16): [True: 0, False: 0]
  Branch (139:49): [True: 0, False: 0]
  Branch (139:16): [True: 0, False: 0]
  Branch (139:49): [True: 0, False: 0]
  Branch (139:16): [True: 0, False: 0]
  Branch (139:49): [True: 0, False: 0]
  Branch (139:16): [True: 0, False: 0]
  Branch (139:49): [True: 0, False: 0]
  Branch (139:16): [True: 0, False: 0]
  Branch (139:49): [True: 0, False: 0]
  Branch (139:16): [True: 0, False: 0]
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  Branch (139:16): [True: 0, False: 0]
  Branch (139:49): [True: 0, False: 0]
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875k
    }
_ZN12PoolResourceILm152ELm8EE16IsFreeListUsableEmm
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875k
    {
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        return alignment <= ELEM_ALIGN_BYTES && bytes <= MAX_BLOCK_SIZE_BYTES;
  Branch (139:16): [True: 875k, False: 0]
  Branch (139:49): [True: 863k, False: 11.5k]
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    }
Unexecuted instantiation: _ZN12PoolResourceILm128ELm1EE16IsFreeListUsableEmm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm2EE16IsFreeListUsableEmm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm4EE16IsFreeListUsableEmm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm8EE16IsFreeListUsableEmm
Unexecuted instantiation: _ZN12PoolResourceILm8ELm8EE16IsFreeListUsableEmm
Unexecuted instantiation: _ZN12PoolResourceILm16ELm16EE16IsFreeListUsableEmm
Unexecuted instantiation: _ZN12PoolResourceILm256ELm16EE16IsFreeListUsableEmm
Unexecuted instantiation: _ZN12PoolResourceILm256ELm64EE16IsFreeListUsableEmm
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    /**
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     * Replaces node with placement constructed ListNode that points to the previous node
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     */
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    void PlacementAddToList(void* p, ListNode*& node)
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    {
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        node = new (p) ListNode{node};
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    }
_ZN12PoolResourceILm152ELm8EE18PlacementAddToListEPvRPNS0_8ListNodeE
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432k
    {
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        node = new (p) ListNode{node};
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    }
Unexecuted instantiation: _ZN12PoolResourceILm128ELm1EE18PlacementAddToListEPvRPNS0_8ListNodeE
Unexecuted instantiation: _ZN12PoolResourceILm128ELm2EE18PlacementAddToListEPvRPNS0_8ListNodeE
Unexecuted instantiation: _ZN12PoolResourceILm128ELm4EE18PlacementAddToListEPvRPNS0_8ListNodeE
Unexecuted instantiation: _ZN12PoolResourceILm128ELm8EE18PlacementAddToListEPvRPNS0_8ListNodeE
Unexecuted instantiation: _ZN12PoolResourceILm8ELm8EE18PlacementAddToListEPvRPNS0_8ListNodeE
Unexecuted instantiation: _ZN12PoolResourceILm16ELm16EE18PlacementAddToListEPvRPNS0_8ListNodeE
Unexecuted instantiation: _ZN12PoolResourceILm256ELm16EE18PlacementAddToListEPvRPNS0_8ListNodeE
Unexecuted instantiation: _ZN12PoolResourceILm256ELm64EE18PlacementAddToListEPvRPNS0_8ListNodeE
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    /**
151
     * Allocate one full memory chunk which will be used to carve out allocations.
152
     * Also puts any leftover bytes into the freelist.
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     *
154
     * Precondition: leftover bytes are either 0 or few enough to fit into a place in the freelist
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     */
156
    void AllocateChunk()
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4.76k
    {
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        // if there is still any available memory left, put it into the freelist.
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        size_t remaining_available_bytes = m_available_memory_end - m_available_memory_it;
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        if (0 != remaining_available_bytes) {
  Branch (160:13): [True: 0, False: 4.76k]
  Branch (160:13): [True: 0, False: 0]
  Branch (160:13): [True: 0, False: 0]
  Branch (160:13): [True: 0, False: 0]
  Branch (160:13): [True: 0, False: 0]
  Branch (160:13): [True: 0, False: 0]
  Branch (160:13): [True: 0, False: 0]
  Branch (160:13): [True: 0, False: 0]
  Branch (160:13): [True: 0, False: 0]
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0
            ASAN_UNPOISON_MEMORY_REGION(m_available_memory_it, sizeof(ListNode));
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            PlacementAddToList(m_available_memory_it, m_free_lists[remaining_available_bytes / ELEM_ALIGN_BYTES]);
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            ASAN_POISON_MEMORY_REGION(m_available_memory_it, sizeof(ListNode));
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0
        }
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        void* storage = ::operator new (m_chunk_size_bytes, std::align_val_t{ELEM_ALIGN_BYTES});
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        m_available_memory_it = new (storage) std::byte[m_chunk_size_bytes];
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        m_available_memory_end = m_available_memory_it + m_chunk_size_bytes;
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        ASAN_POISON_MEMORY_REGION(m_available_memory_it, m_chunk_size_bytes);
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        m_allocated_chunks.emplace_back(m_available_memory_it);
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    }
_ZN12PoolResourceILm152ELm8EE13AllocateChunkEv
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4.76k
    {
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        // if there is still any available memory left, put it into the freelist.
159
4.76k
        size_t remaining_available_bytes = m_available_memory_end - m_available_memory_it;
160
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        if (0 != remaining_available_bytes) {
  Branch (160:13): [True: 0, False: 4.76k]
161
0
            ASAN_UNPOISON_MEMORY_REGION(m_available_memory_it, sizeof(ListNode));
162
0
            PlacementAddToList(m_available_memory_it, m_free_lists[remaining_available_bytes / ELEM_ALIGN_BYTES]);
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0
            ASAN_POISON_MEMORY_REGION(m_available_memory_it, sizeof(ListNode));
164
0
        }
165
166
4.76k
        void* storage = ::operator new (m_chunk_size_bytes, std::align_val_t{ELEM_ALIGN_BYTES});
167
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        m_available_memory_it = new (storage) std::byte[m_chunk_size_bytes];
168
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        m_available_memory_end = m_available_memory_it + m_chunk_size_bytes;
169
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        ASAN_POISON_MEMORY_REGION(m_available_memory_it, m_chunk_size_bytes);
170
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        m_allocated_chunks.emplace_back(m_available_memory_it);
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    }
Unexecuted instantiation: _ZN12PoolResourceILm128ELm1EE13AllocateChunkEv
Unexecuted instantiation: _ZN12PoolResourceILm128ELm2EE13AllocateChunkEv
Unexecuted instantiation: _ZN12PoolResourceILm128ELm4EE13AllocateChunkEv
Unexecuted instantiation: _ZN12PoolResourceILm128ELm8EE13AllocateChunkEv
Unexecuted instantiation: _ZN12PoolResourceILm8ELm8EE13AllocateChunkEv
Unexecuted instantiation: _ZN12PoolResourceILm16ELm16EE13AllocateChunkEv
Unexecuted instantiation: _ZN12PoolResourceILm256ELm16EE13AllocateChunkEv
Unexecuted instantiation: _ZN12PoolResourceILm256ELm64EE13AllocateChunkEv
172
173
    /**
174
     * Access to internals for testing purpose only
175
     */
176
    friend class PoolResourceTester;
177
178
public:
179
    /**
180
     * Construct a new PoolResource object which allocates the first chunk.
181
     * chunk_size_bytes will be rounded up to next multiple of ELEM_ALIGN_BYTES.
182
     */
183
    explicit PoolResource(std::size_t chunk_size_bytes)
184
4.76k
        : m_chunk_size_bytes(NumElemAlignBytes(chunk_size_bytes) * ELEM_ALIGN_BYTES)
185
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    {
186
4.76k
        assert(m_chunk_size_bytes >= MAX_BLOCK_SIZE_BYTES);
  Branch (186:9): [True: 4.76k, False: 0]
  Branch (186:9): [True: 0, False: 0]
  Branch (186:9): [True: 0, False: 0]
  Branch (186:9): [True: 0, False: 0]
  Branch (186:9): [True: 0, False: 0]
  Branch (186:9): [True: 0, False: 0]
  Branch (186:9): [True: 0, False: 0]
  Branch (186:9): [True: 0, False: 0]
  Branch (186:9): [True: 0, False: 0]
187
4.76k
        AllocateChunk();
188
4.76k
    }
_ZN12PoolResourceILm152ELm8EEC2Em
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184
4.76k
        : m_chunk_size_bytes(NumElemAlignBytes(chunk_size_bytes) * ELEM_ALIGN_BYTES)
185
4.76k
    {
186
4.76k
        assert(m_chunk_size_bytes >= MAX_BLOCK_SIZE_BYTES);
  Branch (186:9): [True: 4.76k, False: 0]
187
4.76k
        AllocateChunk();
188
4.76k
    }
Unexecuted instantiation: _ZN12PoolResourceILm128ELm1EEC2Em
Unexecuted instantiation: _ZN12PoolResourceILm128ELm2EEC2Em
Unexecuted instantiation: _ZN12PoolResourceILm128ELm4EEC2Em
Unexecuted instantiation: _ZN12PoolResourceILm128ELm8EEC2Em
Unexecuted instantiation: _ZN12PoolResourceILm8ELm8EEC2Em
Unexecuted instantiation: _ZN12PoolResourceILm16ELm16EEC2Em
Unexecuted instantiation: _ZN12PoolResourceILm256ELm16EEC2Em
Unexecuted instantiation: _ZN12PoolResourceILm256ELm64EEC2Em
189
190
    /**
191
     * Construct a new Pool Resource object, defaults to 2^18=262144 chunk size.
192
     */
193
4.76k
    PoolResource() : PoolResource(262144) {}
194
195
    /**
196
     * Disable copy & move semantics, these are not supported for the resource.
197
     */
198
    PoolResource(const PoolResource&) = delete;
199
    PoolResource& operator=(const PoolResource&) = delete;
200
    PoolResource(PoolResource&&) = delete;
201
    PoolResource& operator=(PoolResource&&) = delete;
202
203
    /**
204
     * Deallocates all memory allocated associated with the memory resource.
205
     */
206
    ~PoolResource()
207
4.76k
    {
208
4.76k
        for (std::byte* chunk : m_allocated_chunks) {
  Branch (208:31): [True: 4.76k, False: 4.76k]
  Branch (208:31): [True: 0, False: 0]
  Branch (208:31): [True: 0, False: 0]
  Branch (208:31): [True: 0, False: 0]
  Branch (208:31): [True: 0, False: 0]
  Branch (208:31): [True: 0, False: 0]
  Branch (208:31): [True: 0, False: 0]
  Branch (208:31): [True: 0, False: 0]
  Branch (208:31): [True: 0, False: 0]
209
4.76k
            std::destroy(chunk, chunk + m_chunk_size_bytes);
210
4.76k
            ::operator delete ((void*)chunk, std::align_val_t{ELEM_ALIGN_BYTES});
211
4.76k
            ASAN_UNPOISON_MEMORY_REGION(chunk, m_chunk_size_bytes);
212
4.76k
        }
213
4.76k
    }
_ZN12PoolResourceILm152ELm8EED2Ev
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207
4.76k
    {
208
4.76k
        for (std::byte* chunk : m_allocated_chunks) {
  Branch (208:31): [True: 4.76k, False: 4.76k]
209
4.76k
            std::destroy(chunk, chunk + m_chunk_size_bytes);
210
4.76k
            ::operator delete ((void*)chunk, std::align_val_t{ELEM_ALIGN_BYTES});
211
4.76k
            ASAN_UNPOISON_MEMORY_REGION(chunk, m_chunk_size_bytes);
212
4.76k
        }
213
4.76k
    }
Unexecuted instantiation: _ZN12PoolResourceILm128ELm1EED2Ev
Unexecuted instantiation: _ZN12PoolResourceILm128ELm2EED2Ev
Unexecuted instantiation: _ZN12PoolResourceILm128ELm4EED2Ev
Unexecuted instantiation: _ZN12PoolResourceILm128ELm8EED2Ev
Unexecuted instantiation: _ZN12PoolResourceILm8ELm8EED2Ev
Unexecuted instantiation: _ZN12PoolResourceILm16ELm16EED2Ev
Unexecuted instantiation: _ZN12PoolResourceILm256ELm16EED2Ev
Unexecuted instantiation: _ZN12PoolResourceILm256ELm64EED2Ev
214
215
    /**
216
     * Allocates a block of bytes. If possible the freelist is used, otherwise allocation
217
     * is forwarded to ::operator new().
218
     */
219
    void* Allocate(std::size_t bytes, std::size_t alignment)
220
437k
    {
221
437k
        if (IsFreeListUsable(bytes, alignment)) {
  Branch (221:13): [True: 431k, False: 5.77k]
  Branch (221:13): [True: 0, False: 0]
  Branch (221:13): [True: 0, False: 0]
  Branch (221:13): [True: 0, False: 0]
  Branch (221:13): [True: 0, False: 0]
  Branch (221:13): [True: 0, False: 0]
  Branch (221:13): [True: 0, False: 0]
  Branch (221:13): [True: 0, False: 0]
  Branch (221:13): [True: 0, False: 0]
222
431k
            const std::size_t num_alignments = NumElemAlignBytes(bytes);
223
431k
            if (nullptr != m_free_lists[num_alignments]) {
  Branch (223:17): [True: 286k, False: 145k]
  Branch (223:17): [True: 0, False: 0]
  Branch (223:17): [True: 0, False: 0]
  Branch (223:17): [True: 0, False: 0]
  Branch (223:17): [True: 0, False: 0]
  Branch (223:17): [True: 0, False: 0]
  Branch (223:17): [True: 0, False: 0]
  Branch (223:17): [True: 0, False: 0]
  Branch (223:17): [True: 0, False: 0]
224
                // we've already got data in the pool's freelist, unlink one element and return the pointer
225
                // to the unlinked memory. Since FreeList is trivially destructible we can just treat it as
226
                // uninitialized memory.
227
286k
                ASAN_UNPOISON_MEMORY_REGION(m_free_lists[num_alignments], sizeof(ListNode));
228
286k
                auto* next{m_free_lists[num_alignments]->m_next};
229
286k
                ASAN_POISON_MEMORY_REGION(m_free_lists[num_alignments], sizeof(ListNode));
230
286k
                ASAN_UNPOISON_MEMORY_REGION(m_free_lists[num_alignments], bytes);
231
286k
                return std::exchange(m_free_lists[num_alignments], next);
232
286k
            }
233
234
            // freelist is empty: get one allocation from allocated chunk memory.
235
145k
            const std::ptrdiff_t round_bytes = static_cast<std::ptrdiff_t>(num_alignments * ELEM_ALIGN_BYTES);
236
145k
            if (round_bytes > m_available_memory_end - m_available_memory_it) {
  Branch (236:17): [True: 0, False: 145k]
  Branch (236:17): [True: 0, False: 0]
  Branch (236:17): [True: 0, False: 0]
  Branch (236:17): [True: 0, False: 0]
  Branch (236:17): [True: 0, False: 0]
  Branch (236:17): [True: 0, False: 0]
  Branch (236:17): [True: 0, False: 0]
  Branch (236:17): [True: 0, False: 0]
  Branch (236:17): [True: 0, False: 0]
237
                // slow path, only happens when a new chunk needs to be allocated
238
0
                AllocateChunk();
239
0
            }
240
241
            // Make sure we use the right amount of bytes for that freelist (might be rounded up),
242
145k
            ASAN_UNPOISON_MEMORY_REGION(m_available_memory_it, round_bytes);
243
145k
            return std::exchange(m_available_memory_it, m_available_memory_it + round_bytes);
244
431k
        }
245
246
        // Can't use the pool => use operator new()
247
5.77k
        return ::operator new (bytes, std::align_val_t{alignment});
248
437k
    }
_ZN12PoolResourceILm152ELm8EE8AllocateEmm
Line
Count
Source
220
437k
    {
221
437k
        if (IsFreeListUsable(bytes, alignment)) {
  Branch (221:13): [True: 431k, False: 5.77k]
222
431k
            const std::size_t num_alignments = NumElemAlignBytes(bytes);
223
431k
            if (nullptr != m_free_lists[num_alignments]) {
  Branch (223:17): [True: 286k, False: 145k]
224
                // we've already got data in the pool's freelist, unlink one element and return the pointer
225
                // to the unlinked memory. Since FreeList is trivially destructible we can just treat it as
226
                // uninitialized memory.
227
286k
                ASAN_UNPOISON_MEMORY_REGION(m_free_lists[num_alignments], sizeof(ListNode));
228
286k
                auto* next{m_free_lists[num_alignments]->m_next};
229
286k
                ASAN_POISON_MEMORY_REGION(m_free_lists[num_alignments], sizeof(ListNode));
230
286k
                ASAN_UNPOISON_MEMORY_REGION(m_free_lists[num_alignments], bytes);
231
286k
                return std::exchange(m_free_lists[num_alignments], next);
232
286k
            }
233
234
            // freelist is empty: get one allocation from allocated chunk memory.
235
145k
            const std::ptrdiff_t round_bytes = static_cast<std::ptrdiff_t>(num_alignments * ELEM_ALIGN_BYTES);
236
145k
            if (round_bytes > m_available_memory_end - m_available_memory_it) {
  Branch (236:17): [True: 0, False: 145k]
237
                // slow path, only happens when a new chunk needs to be allocated
238
0
                AllocateChunk();
239
0
            }
240
241
            // Make sure we use the right amount of bytes for that freelist (might be rounded up),
242
145k
            ASAN_UNPOISON_MEMORY_REGION(m_available_memory_it, round_bytes);
243
145k
            return std::exchange(m_available_memory_it, m_available_memory_it + round_bytes);
244
431k
        }
245
246
        // Can't use the pool => use operator new()
247
5.77k
        return ::operator new (bytes, std::align_val_t{alignment});
248
437k
    }
Unexecuted instantiation: _ZN12PoolResourceILm128ELm1EE8AllocateEmm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm2EE8AllocateEmm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm4EE8AllocateEmm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm8EE8AllocateEmm
Unexecuted instantiation: _ZN12PoolResourceILm8ELm8EE8AllocateEmm
Unexecuted instantiation: _ZN12PoolResourceILm16ELm16EE8AllocateEmm
Unexecuted instantiation: _ZN12PoolResourceILm256ELm16EE8AllocateEmm
Unexecuted instantiation: _ZN12PoolResourceILm256ELm64EE8AllocateEmm
249
250
    /**
251
     * Returns a block to the freelists, or deletes the block when it did not come from the chunks.
252
     */
253
    void Deallocate(void* p, std::size_t bytes, std::size_t alignment) noexcept
254
437k
    {
255
437k
        if (IsFreeListUsable(bytes, alignment)) {
  Branch (255:13): [True: 432k, False: 5.77k]
  Branch (255:13): [True: 0, False: 0]
  Branch (255:13): [True: 0, False: 0]
  Branch (255:13): [True: 0, False: 0]
  Branch (255:13): [True: 0, False: 0]
  Branch (255:13): [True: 0, False: 0]
  Branch (255:13): [True: 0, False: 0]
  Branch (255:13): [True: 0, False: 0]
  Branch (255:13): [True: 0, False: 0]
256
432k
            const std::size_t num_alignments = NumElemAlignBytes(bytes);
257
            // put the memory block into the linked list. We can placement construct the FreeList
258
            // into the memory since we can be sure the alignment is correct.
259
432k
            ASAN_UNPOISON_MEMORY_REGION(p, sizeof(ListNode));
260
432k
            PlacementAddToList(p, m_free_lists[num_alignments]);
261
432k
            ASAN_POISON_MEMORY_REGION(p, std::max(bytes, sizeof(ListNode)));
262
432k
        } else {
263
            // Can't use the pool => forward deallocation to ::operator delete().
264
5.77k
            ::operator delete (p, std::align_val_t{alignment});
265
5.77k
        }
266
437k
    }
_ZN12PoolResourceILm152ELm8EE10DeallocateEPvmm
Line
Count
Source
254
437k
    {
255
437k
        if (IsFreeListUsable(bytes, alignment)) {
  Branch (255:13): [True: 432k, False: 5.77k]
256
432k
            const std::size_t num_alignments = NumElemAlignBytes(bytes);
257
            // put the memory block into the linked list. We can placement construct the FreeList
258
            // into the memory since we can be sure the alignment is correct.
259
432k
            ASAN_UNPOISON_MEMORY_REGION(p, sizeof(ListNode));
260
432k
            PlacementAddToList(p, m_free_lists[num_alignments]);
261
432k
            ASAN_POISON_MEMORY_REGION(p, std::max(bytes, sizeof(ListNode)));
262
432k
        } else {
263
            // Can't use the pool => forward deallocation to ::operator delete().
264
5.77k
            ::operator delete (p, std::align_val_t{alignment});
265
5.77k
        }
266
437k
    }
Unexecuted instantiation: _ZN12PoolResourceILm128ELm1EE10DeallocateEPvmm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm2EE10DeallocateEPvmm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm4EE10DeallocateEPvmm
Unexecuted instantiation: _ZN12PoolResourceILm128ELm8EE10DeallocateEPvmm
Unexecuted instantiation: _ZN12PoolResourceILm8ELm8EE10DeallocateEPvmm
Unexecuted instantiation: _ZN12PoolResourceILm16ELm16EE10DeallocateEPvmm
Unexecuted instantiation: _ZN12PoolResourceILm256ELm16EE10DeallocateEPvmm
Unexecuted instantiation: _ZN12PoolResourceILm256ELm64EE10DeallocateEPvmm
267
268
    /**
269
     * Number of allocated chunks
270
     */
271
    [[nodiscard]] std::size_t NumAllocatedChunks() const
272
0
    {
273
0
        return m_allocated_chunks.size();
274
0
    }
275
276
    /**
277
     * Size in bytes to allocate per chunk, currently hardcoded to a fixed size.
278
     */
279
    [[nodiscard]] size_t ChunkSizeBytes() const
280
0
    {
281
0
        return m_chunk_size_bytes;
282
0
    }
Unexecuted instantiation: _ZNK12PoolResourceILm128ELm1EE14ChunkSizeBytesEv
Unexecuted instantiation: _ZNK12PoolResourceILm128ELm2EE14ChunkSizeBytesEv
Unexecuted instantiation: _ZNK12PoolResourceILm128ELm4EE14ChunkSizeBytesEv
Unexecuted instantiation: _ZNK12PoolResourceILm128ELm8EE14ChunkSizeBytesEv
Unexecuted instantiation: _ZNK12PoolResourceILm8ELm8EE14ChunkSizeBytesEv
Unexecuted instantiation: _ZNK12PoolResourceILm16ELm16EE14ChunkSizeBytesEv
Unexecuted instantiation: _ZNK12PoolResourceILm256ELm16EE14ChunkSizeBytesEv
Unexecuted instantiation: _ZNK12PoolResourceILm256ELm64EE14ChunkSizeBytesEv
Unexecuted instantiation: _ZNK12PoolResourceILm152ELm8EE14ChunkSizeBytesEv
283
};
284
285
286
/**
287
 * Forwards all allocations/deallocations to the PoolResource.
288
 */
289
template <class T, std::size_t MAX_BLOCK_SIZE_BYTES, std::size_t ALIGN_BYTES = alignof(T)>
290
class PoolAllocator
291
{
292
    PoolResource<MAX_BLOCK_SIZE_BYTES, ALIGN_BYTES>* m_resource;
293
294
    template <typename U, std::size_t M, std::size_t A>
295
    friend class PoolAllocator;
296
297
public:
298
    using value_type = T;
299
    using ResourceType = PoolResource<MAX_BLOCK_SIZE_BYTES, ALIGN_BYTES>;
300
301
    /**
302
     * Not explicit so we can easily construct it with the correct resource
303
     */
304
    PoolAllocator(ResourceType* resource) noexcept
305
4.76k
        : m_resource(resource)
306
4.76k
    {
307
4.76k
    }
308
309
    PoolAllocator(const PoolAllocator& other) noexcept = default;
310
    PoolAllocator& operator=(const PoolAllocator& other) noexcept = default;
311
312
    template <class U>
313
    PoolAllocator(const PoolAllocator<U, MAX_BLOCK_SIZE_BYTES, ALIGN_BYTES>& other) noexcept
314
25.8k
        : m_resource(other.resource())
315
25.8k
    {
316
25.8k
    }
_ZN13PoolAllocatorIPNSt8__detail15_Hash_node_baseELm152ELm8EEC2INS0_10_Hash_nodeISt4pairIK9COutPoint16CCoinsCacheEntryELb0EEEEERKS_IT_Lm152ELm8EE
Line
Count
Source
314
21.0k
        : m_resource(other.resource())
315
21.0k
    {
316
21.0k
    }
_ZN13PoolAllocatorINSt8__detail10_Hash_nodeISt4pairIK9COutPoint16CCoinsCacheEntryELb0EEELm152ELm8EEC2IS6_EERKS_IT_Lm152ELm8EE
Line
Count
Source
314
4.76k
        : m_resource(other.resource())
315
4.76k
    {
316
4.76k
    }
Unexecuted instantiation: _ZN13PoolAllocatorISt4pairIK9COutPoint16CCoinsCacheEntryELm152ELm8EEC2INSt8__detail10_Hash_nodeIS4_Lb0EEEEERKS_IT_Lm152ELm8EE
317
318
    /**
319
     * The rebind struct here is mandatory because we use non type template arguments for
320
     * PoolAllocator. See https://en.cppreference.com/w/cpp/named_req/Allocator#cite_note-2
321
     */
322
    template <typename U>
323
    struct rebind {
324
        using other = PoolAllocator<U, MAX_BLOCK_SIZE_BYTES, ALIGN_BYTES>;
325
    };
326
327
    /**
328
     * Forwards each call to the resource.
329
     */
330
    T* allocate(size_t n)
331
437k
    {
332
437k
        return static_cast<T*>(m_resource->Allocate(n * sizeof(T), alignof(T)));
333
437k
    }
_ZN13PoolAllocatorIPNSt8__detail15_Hash_node_baseELm152ELm8EE8allocateEm
Line
Count
Source
331
10.5k
    {
332
10.5k
        return static_cast<T*>(m_resource->Allocate(n * sizeof(T), alignof(T)));
333
10.5k
    }
_ZN13PoolAllocatorINSt8__detail10_Hash_nodeISt4pairIK9COutPoint16CCoinsCacheEntryELb0EEELm152ELm8EE8allocateEm
Line
Count
Source
331
427k
    {
332
427k
        return static_cast<T*>(m_resource->Allocate(n * sizeof(T), alignof(T)));
333
427k
    }
334
335
    /**
336
     * Forwards each call to the resource.
337
     */
338
    void deallocate(T* p, size_t n) noexcept
339
437k
    {
340
437k
        m_resource->Deallocate(p, n * sizeof(T), alignof(T));
341
437k
    }
_ZN13PoolAllocatorINSt8__detail10_Hash_nodeISt4pairIK9COutPoint16CCoinsCacheEntryELb0EEELm152ELm8EE10deallocateEPS7_m
Line
Count
Source
339
427k
    {
340
427k
        m_resource->Deallocate(p, n * sizeof(T), alignof(T));
341
427k
    }
_ZN13PoolAllocatorIPNSt8__detail15_Hash_node_baseELm152ELm8EE10deallocateEPS2_m
Line
Count
Source
339
10.5k
    {
340
10.5k
        m_resource->Deallocate(p, n * sizeof(T), alignof(T));
341
10.5k
    }
342
343
    ResourceType* resource() const noexcept
344
25.8k
    {
345
25.8k
        return m_resource;
346
25.8k
    }
_ZNK13PoolAllocatorINSt8__detail10_Hash_nodeISt4pairIK9COutPoint16CCoinsCacheEntryELb0EEELm152ELm8EE8resourceEv
Line
Count
Source
344
21.0k
    {
345
21.0k
        return m_resource;
346
21.0k
    }
_ZNK13PoolAllocatorISt4pairIK9COutPoint16CCoinsCacheEntryELm152ELm8EE8resourceEv
Line
Count
Source
344
4.76k
    {
345
4.76k
        return m_resource;
346
4.76k
    }
347
};
348
349
template <class T1, class T2, std::size_t MAX_BLOCK_SIZE_BYTES, std::size_t ALIGN_BYTES>
350
bool operator==(const PoolAllocator<T1, MAX_BLOCK_SIZE_BYTES, ALIGN_BYTES>& a,
351
                const PoolAllocator<T2, MAX_BLOCK_SIZE_BYTES, ALIGN_BYTES>& b) noexcept
352
{
353
    return a.resource() == b.resource();
354
}
355
356
#endif // BITCOIN_SUPPORT_ALLOCATORS_POOL_H